return ar->hif_ops->resume(ar);
}
+
+static inline int ath6kl_hif_power_on(struct ath6kl *ar)
+{
+ ath6kl_dbg(ATH6KL_DBG_HIF, "hif power on\n");
+
+ return ar->hif_ops->power_on(ar);
+}
+
+static inline int ath6kl_hif_power_off(struct ath6kl *ar)
+{
+ ath6kl_dbg(ATH6KL_DBG_HIF, "hif power off\n");
+
+ return ar->hif_ops->power_off(ar);
+}
+
#endif
void (*cleanup_scatter)(struct ath6kl *ar);
int (*suspend)(struct ath6kl *ar);
int (*resume)(struct ath6kl *ar);
+ int (*power_on)(struct ath6kl *ar);
+ int (*power_off)(struct ath6kl *ar);
};
int ath6kl_hif_setup(struct ath6kl_device *dev);
void ath6kl_core_cleanup(struct ath6kl *ar)
{
+ ath6kl_hif_power_off(ar);
+
destroy_workqueue(ar->ath6kl_wq);
if (ar->htc_target)
if (ret)
goto err_wq;
- ret = ath6kl_bmi_get_target_info(ar, &targ_info);
+ ret = ath6kl_hif_power_on(ar);
if (ret)
goto err_bmi_cleanup;
+ ret = ath6kl_bmi_get_target_info(ar, &targ_info);
+ if (ret)
+ goto err_power_off;
+
ar->version.target_ver = le32_to_cpu(targ_info.version);
ar->target_type = le32_to_cpu(targ_info.type);
ar->wiphy->hw_version = le32_to_cpu(targ_info.version);
ret = ath6kl_init_hw_params(ar);
if (ret)
- goto err_bmi_cleanup;
+ goto err_power_off;
ret = ath6kl_configure_target(ar);
if (ret)
- goto err_bmi_cleanup;
+ goto err_power_off;
ar->htc_target = ath6kl_htc_create(ar);
if (!ar->htc_target) {
ret = -ENOMEM;
- goto err_bmi_cleanup;
+ goto err_power_off;
}
ret = ath6kl_fetch_firmwares(ar);
err_htc_cleanup:
ath6kl_htc_cleanup(ar->htc_target);
+err_power_off:
+ ath6kl_hif_power_off(ar);
err_bmi_cleanup:
ath6kl_bmi_cleanup(ar);
err_wq:
WARN_ON(status && status != -ECANCELED);
}
-static int ath6kl_sdio_power_on(struct ath6kl_sdio *ar_sdio)
+static int ath6kl_sdio_power_on(struct ath6kl *ar)
{
+ struct ath6kl_sdio *ar_sdio = ath6kl_sdio_priv(ar);
struct sdio_func *func = ar_sdio->func;
int ret = 0;
return ret;
}
-static int ath6kl_sdio_power_off(struct ath6kl_sdio *ar_sdio)
+static int ath6kl_sdio_power_off(struct ath6kl *ar)
{
+ struct ath6kl_sdio *ar_sdio = ath6kl_sdio_priv(ar);
int ret;
if (ar_sdio->is_disabled)
.cleanup_scatter = ath6kl_sdio_cleanup_scatter,
.suspend = ath6kl_sdio_suspend,
.resume = ath6kl_sdio_resume,
+ .power_on = ath6kl_sdio_power_on,
+ .power_off = ath6kl_sdio_power_off,
};
static int ath6kl_sdio_probe(struct sdio_func *func,
sdio_release_host(func);
- ret = ath6kl_sdio_power_on(ar_sdio);
- if (ret)
- goto err_core_alloc;
-
sdio_claim_host(func);
ret = sdio_set_block_size(func, HIF_MBOX_BLOCK_SIZE);
ath6kl_err("Set sdio block size %d failed: %d)\n",
HIF_MBOX_BLOCK_SIZE, ret);
sdio_release_host(func);
- goto err_off;
+ goto err_hif;
}
sdio_release_host(func);
ret = ath6kl_core_init(ar);
if (ret) {
ath6kl_err("Failed to init ath6kl core\n");
- goto err_off;
+ goto err_hif;
}
return ret;
-err_off:
- ath6kl_sdio_power_off(ar_sdio);
err_core_alloc:
ath6kl_core_free(ar_sdio->ar);
err_dma:
ath6kl_core_cleanup(ar_sdio->ar);
- ath6kl_sdio_power_off(ar_sdio);
-
kfree(ar_sdio->dma_buffer);
kfree(ar_sdio);
}